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Updated: May 3, 2026

Identifying Coronary Artery Calcification on Non-gated Computed Tomography Scans
Published on: August 28, 2018
Association between arterial calcifications and nonlacunar and lacunar ischemic strokes
Anouk C van Dijk1, Susanne Fonville, Taihra Zadi
1From the Departments of Radiology (A.C.v.D., T.Z., A.M.G.v.H., G.S., A.v.d.L.) and Neurology (A.C.v.D., S.F., P.J.K.), Erasmus Medical Center, Rotterdam, The Netherlands.
Insights
Nonlacunar ischemic strokes show higher aortic arch calcification volume compared to lacunar strokes. This finding suggests distinct etiologies, but further research is needed on plaque components and morphology.
Area of Science:
- Cardiovascular Medicine
- Neurology
- Radiology
Background:
- Cerebral infarcts are classified as nonlacunar (thromboembolism) or lacunar (small vessel disease).
- Arterial calcifications are implicated in stroke pathogenesis.
Purpose of the Study:
- To investigate differences in arterial calcification volumes between nonlacunar and lacunar ischemic strokes.
- To determine the association between aortic arch and carotid artery calcifications and stroke subtypes.
Main Methods:
- 820 patients with transient ischemic attack or ischemic stroke underwent multidetector computed tomography angiography.
- Calcification volumes in the aortic arch, extracranial, and intracranial carotid arteries were measured.
- Multivariable logistic regression adjusted for stenosis and cardiovascular risk factors.
Main Results:
- A higher volume of aortic arch calcifications was independently associated with nonlacunar ischemic strokes (aOR 1.11 [1.02-1.21]).
- No independent associations were found between carotid artery calcifications (extracranial and intracranial) and nonlacunar strokes.
Conclusions:
- Aortic arch calcification volume differs between nonlacunar and lacunar strokes.
- Findings partially support distinct etiologies for stroke subtypes.
- Further research is needed on plaque components, morphology, and aortic arch calcifications.
Background And Purpose:
Nonlacunar cerebral infarcts are presumed to be caused by thromboembolism from the heart or extracranial arteries, whereas lacunar infarcts are thought to be caused by small vessel disease. We investigated to what extent arterial calcifications differ between nonlacunar and lacunar ischemic strokes.
Methods:
We studied 820 consecutive patients with transient ischemic attack or ischemic stroke in the anterior circulation who underwent multidetector computed tomography angiography and had no rare cause of stroke. The presence of likely cardioembolic pathogenesis was determined according to the Trial of Org 10172 in Acute Stroke Treatment criteria. The remaining 708 patients were categorized as nonlacunar or lacunar strokes, either transient ischemic attacks or strokes, based on clinical symptoms corrected by brain imaging results. We measured volume of calcifications in the aortic arch, symptomatic extracranial and intracranial carotid artery using multidetector computed tomography angiography. The difference in calcifications between nonlacunar and lacunar strokes was assessed with a multivariable logistic regression analysis. We adjusted for degree of symptomatic carotid artery stenosis and cardiovascular risk factors.
Results:
We found an independent association between volume of aortic arch calcifications and nonlacunar ischemic strokes (adjusted odds ratio [95% confidence interval], 1.11 [1.02-1.21]). No independent associations between extracranial and intracranial carotid artery calcifications and nonlacunar strokes were present.
Conclusions:
The only difference we found between nonlacunar and lacunar strokes was a higher calcification volume in the aortic arch in nonlacunar strokes. Our findings only partially confirm the notion of distinct etiologies and suggest that the potential role of other plaque components, plaque morphology, and aortic arch calcifications in ischemic stroke subtypes awaits further evaluation.
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